Area of research
Cognitive Neuroscience · Cellular and Molecular Neuroscience
Research interest
Research interests include Neural dynamics and brain function, EEG and Brain-Computer Interfaces, Neuroscience and Neural Engineering, and Functional Brain Connectivity Studies.
A Surgical Planning Pipeline for Human Implantable Brain-Computer Interfaces
DREDge: robust motion correction for high-density extracellular recordings across species
Flexible, scalable, high channel count stereo-electrode for recording in the human brain
Semantic encoding during language comprehension at single-cell resolution
Theta-burst direct electrical stimulation remodels human brain networks
Differential cortical layer engagement during seizure initiation and spread in humans
Theta-burst direct electrical stimulation remodels human brain networks
Characterizing brain dynamics during ketamine-induced dissociation and subsequent interactions with propofol using human intracranial neurophysiology
Differential cortical network engagement during states of un/consciousness in humans
Modified Neuropixels probes for recording human neurophysiology in the operating room
Large-scale neural recordings with single neuron resolution using Neuropixels probes in human cortex
Human brain mapping with multithousand-channel PtNRGrids resolves spatiotemporal dynamics
Local and distant cortical responses to single pulse intracranial stimulation in the human brain are differentially modulated by specific stimulation parameters
Closed-loop enhancement and neural decoding of cognitive control in humans
Local and distant responses to single pulse electrical stimulation reflect different forms of connectivity
Microscale Physiological Events on the Human Cortical Surface
Large-scale neural recordings with single-cell resolution in human cortex using high-density Neuropixels probes
CLoSES: A platform for closed-loop intracranial stimulation in humans
Deep brain stimulation of the internal capsule enhances human cognitive control and prefrontal cortex function
Selective Formation of Porous Pt Nanorods for Highly Electrochemically Efficient Neural Electrode Interfaces
Decoding task engagement from distributed network electrophysiology in humans
Consistent linear and non-linear responses to invasive electrical brain stimulation across individuals and primate species with implanted electrodes
Decoding Hidden Cognitive States From Behavior and Physiology Using a Bayesian Approach
A neural mass model to predict electrical stimulation evoked responses in human and non-human primate brain
Treating refractory mental illness with closed-loop brain stimulation: Progress towards a patient-specific transdiagnostic approach
Vision in <i>Drosophila</i>: Seeing the World Through a Model's Eyes